Ca2+-dependent enhancement of release by subthreshold somatic depolarization (original) (raw)
References
Alle, H. & Geiger, J.R.P. Combined analog and action potential coding in hippocampal mossy fibers. Science311, 1290–1293 (2006). ArticleCAS Google Scholar
Shu, Y., Hasenstaub, A., Duque, A., Yu, Y. & McCormick, D.A. Modulation of intracortical synaptic potentials by presynaptic somatic membrane potential. Nature441, 761–765 (2006). ArticleCAS Google Scholar
Kole, M.H.P., Letzkus, J.J. & Stuart, G.J. Axon initial segment Kv1 channels control action potential waveform and synaptic efficacy. Neuron55, 633–647 (2007). ArticleCAS Google Scholar
Bollmann, J.H., Sakmann, B. & Borst, J.G.G. Calcium sensitivity of a glutamate release in a calyx-type terminal. Science289, 953–957 (2000). ArticleCAS Google Scholar
Schneggenburger, R. & Neher, E. Intracellular calcium dependence of transmitter release rates at a fast synapse. Nature406, 889–893 (2000). ArticleCAS Google Scholar
Sabatini, B.L. & Regehr, W.G. Control of neurotransmitter release by presynaptic waveform at the granule to Purkinje cell synapse. J. Neurosci.17, 3425–3435 (1997). ArticleCAS Google Scholar
Borst, J.G.G. & Sakmann, B. Calcium influx and transmitter release in a fast CNS synapse. Nature383, 431–434 (1996). ArticleCAS Google Scholar
Bischofberger, J., Geiger, J.R. & Jonas, P. Timing and efficacy of Ca2+ channel activation in hippocampal mossy fiber boutons. J. Neurosci.22, 10593–10602 (2002). ArticleCAS Google Scholar
Brenowitz, S.D. & Regehr, W.G. Reliability and heterogeneity of calcium signaling at single presynaptic boutons of cerebellar granule cells. J. Neurosci.27, 7888–7898 (2007). ArticleCAS Google Scholar
Awatramani, G.B., Price, G.D. & Trussell, L.O. Modulation of transmitter release by presynaptic resting potential and background calcium levels. Neuron48, 109–121 (2005). ArticleCAS Google Scholar
Hori, T. & Takahashi, T. Mechanisms underlying short-term modulation of transmitter release by presynaptic depolarization. J. Physiol. (Lond.)587, 2987–3000 (2009). ArticleCAS Google Scholar
Scott, R., Ruiz, A., Henneberger, C., Kullmann, D.M. & Rusakov, D.A. Analog modulation of mossy fiber transmission is uncoupled from changes in presynaptic Ca2+. J. Neurosci.28, 7765–7773 (2008). ArticleCAS Google Scholar
Trigo, F.F. et al. Presynaptic miniature Gabaergic currents in developing interneurons. Neuron66, 235–247 (2010). ArticleCAS Google Scholar
Palay, S.L. & Chan-Palay, V. Cerebellar Cortex: Cytology and Organization (Springer-Verlag, New York, 1974).
Mejia-Gervacio, S. et al. Axonal speeding: shaping synaptic potentials in small neurons by the axonal membrane compartment. Neuron53, 843–855 (2007). ArticleCAS Google Scholar
Glitsch, M. & Marty, A. Presynaptic effects of NMDA in cerebellar Purkinje cells and interneurons. J. Neurosci.19, 511–519 (1999). ArticleCAS Google Scholar
Vincent, P. & Marty, A. Fluctuations of inhibitory postsynaptic currents in Purkinje cells from rat cerebellar slices. J. Physiol. (Lond.)494, 183–199 (1996). ArticleCAS Google Scholar
Diana, M.A. & Marty, A. Characterization of depolarization-induced suppression of inhibition using paired interneuron–Purkinje cell recordings. J. Neurosci.23, 5906–5918 (2003). ArticleCAS Google Scholar
Llano, I., Tan, Y.P. & Caputo, C. Spatial heterogeneity of intracellular Ca2+ signals in axons of basket cells from the rat cerebellar slices. J. Physiol. (Lond.)502, 509–519 (1997). ArticleCAS Google Scholar
Forti, L., Pouzat, C. & Llano, I. Action potential–evoked Ca2+ signals and calcium channels in the axons of developing cerebellar interneurons. J. Physiol. (Lond.)527, 33–48 (2000). ArticleCAS Google Scholar
Tottene, A., Moretti, A. & Pietrobon, D. Functional diversity of P-type and R-type calcium channels in rat cerebellar neurons. J. Neurosci.16, 6353–6363 (1996). ArticleCAS Google Scholar
Metz, A.E., Jarsky, T., Martina, M. & Spruston, N. R-type calcium channels contribute to afterdepolarization and bursting in hippocampal CA1 pyramidal neurons. J. Neurosci.25, 5763–5773 (2005). ArticleCAS Google Scholar
Borst, J.G.G. & Sakmann, B. Facilitation of presynaptic calcium currents in the rat brainstem. J. Physiol. (Lond.)513, 149–155 (1998). ArticleCAS Google Scholar
Cuttle, M.F., Tsujimoto, T., Forsythe, I.D. & Takahashi, T. Facilitation of the presynaptic calcium current at an auditory synapse in the rat brainstem. J. Physiol. (Lond.)512, 723–729 (1998). ArticleCAS Google Scholar
Atluri, P.P. & Regehr, W.G. Determinants of the time course of facilitation at the granule cell to Purkinje cell synapse. J. Neurosci.16, 5661–5671 (1996). ArticleCAS Google Scholar
Bucurenciu, I., Kulik, A., Schwaller, B., Frotscher, M. & Jonas, P. Nanodomain coupling between Ca2+ channels and Ca2+ sensors promotes fast and efficient transmitter release at a cortical GABAergic synapse. Neuron57, 536–545 (2008). ArticleCAS Google Scholar
Bucurenciu, I., Bischofberger, J. & Jonas, P. A small number of open Ca2+ channels trigger transmitter release at a central GABAergic synapse. Nat. Neurosci.13, 19–21 (2010). ArticleCAS Google Scholar
Dittman, J.S., Kreitzer, A.C. & Regehr, W.G. Interplay between facilitation, depression, and residual calcium at three presynaptic terminals. J. Neurosci.20, 1374–1385 (2000). ArticleCAS Google Scholar
Müller, M., Goutman, J.D., Kochubey, O. & Schneggenburger, R. Interaction between facilitation and depression at a large CNS synapse reveals mechanisms of short-term plasticity. J. Neurosci.30, 2007–2016 (2010). Article Google Scholar
Atluri, P.P. & Regehr, W.G. Delayed release of neurotransmitter from cerebellar granule cells. J. Neurosci.18, 8214–8227 (1998). ArticleCAS Google Scholar
Lu, T. & Trussell, L.O. Inhibitory transmission mediated by asynchronous transmitter release. Neuron26, 683–694 (2000). ArticleCAS Google Scholar
Otsu, Y. et al. Competition between phasic and synchronous release for recovered synaptic vesicles at developing hippocampal autaptic synapses. J. Neurosci.24, 420–433 (2004). ArticleCAS Google Scholar
Christie, J.M. & Jahr, C.E. Selective expression of ligand-gated ion channels in L5 pyramidal cell axons. J. Neurosci.29, 11441–11450 (2009). ArticleCAS Google Scholar
Li, L., Bischofberger, J. & Jonas, P. Differential gating and recruitment of P/Q-, N-, and R-type Ca2+ channels in hippocampal mossy fiber boutons. J. Neurosci.27, 13420–13429 (2007). ArticleCAS Google Scholar
Wu, L.-G., Borst, J.G.G. & Sakmann, B. R-type Ca2+ currents evoke transmitter release at a rat central synapse. Proc. Natl. Acad. Sci. USA95, 4720–4725 (1998). ArticleCAS Google Scholar
Llano, I. et al. Presynaptic calcium stores underlie large-amplitude miniature IPSCs and spontaneous calcium transients. Nat. Neurosci.3, 1256–1265 (2000). ArticleCAS Google Scholar
Tsujimoto, T., Jeromin, A., Saitoh, N., Roder, J.C. & Takahashi, T. Neural calcium sensor 1 and activity-dependent facilitation of P/Q-type calcium currents at presynaptic nerve terminals. Science295, 2276–2279 (2002). ArticleCAS Google Scholar
Jinno, S., Jeromin, A., Roder, J. & Kosaka, T. Immunocytochemical localization of neural calcium sensor 1 in the hippocampus and cerebellum of the mouse, with special reference to presynaptic terminals. Neuroscience113, 449–461 (2002). ArticleCAS Google Scholar
Jinno, S., Jeromin, A. & Kasaka, T. Expression and possible role of neuronal calcium sensor-1 in the cerebellum. Cerebellum3, 83–88 (2004). ArticleCAS Google Scholar
Geiger, J.R.P. & Jonas, P. Dynamic control of presynaptic Ca2+ inflow by fast-inactivating K+ channels in hippocampal mossy fiber boutons. Neuron28, 927–939 (2000). ArticleCAS Google Scholar
Turecek, R. & Trussell, L.O. Presynaptic glycine receptors enhance transmitter release at a mammalian central synapse. Nature411, 587–590 (2001). ArticleCAS Google Scholar
Felmy, F., Neher, E. & Schneggenburger, R. Probing the intracellular calcium sensitivity of transmitter release during synaptic facilitation. Neuron37, 801–811 (2003). ArticleCAS Google Scholar
Müller, M., Felmy, F. & Schneggenburger, R. A limited contribution of Ca2+ current facilitation to paired-pulse facilitation of transmitter release at the rat calyx of Held. J. Physiol. (Lond.)586, 5503–5520 (2008). Article Google Scholar
Tang, Y., Schlumpberger, T., Kim, T., Lueker, M. & Zucker, R.S. Effects of mobile buffers on facilitation: experimental and computational studies. Biophys. J.78, 2735–2751 (2000). ArticleCAS Google Scholar
Heidelberger, R., Heinemann, C., Neher, E. & Matthews, G. Calcium dependence of the rate of exocytosis in a synaptic terminal. Nature371, 513–515 (1994). ArticleCAS Google Scholar
Wu, L.-G. & Borst, J.G.G. The reduced release probability of releasable vesicles during recovery from short-term synaptic depression. Neuron23, 821–832 (1999). ArticleCAS Google Scholar
Dodt, H.U., Eder, M., Schierloh, A. & Zieglgansberger, W. Infrared-guided laser stimulation of neurons in brain slices. Sci. STKE120, 12 (2002). Google Scholar
Rae, J., Cooper, K., Gates, P. & Watsky, M. Low access resistance perforated patch recordings using amphotericin B. J. Neurosci. Methods37, 15–26 (1991). ArticleCAS Google Scholar